首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Cytocompatibility of electrospun nanofi{ligature}ber tubular scaffolds for small diameter tissue engineering blood vessels
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Cytocompatibility of electrospun nanofi{ligature}ber tubular scaffolds for small diameter tissue engineering blood vessels

机译:静电纺丝纳米纤维管状小支架在小直径组织工程血管中的细胞相容性

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摘要

A tubular scaffold was fabricated by using electrospun polymer solution blends of pNSR32 (recombinant spider silk protein), PCL (polycaprolactone) and Gt (gelatin). The physicochemical properties and cytocompatibility of these scaffolds were investigated. Afterwards, the pNSR32/PCL/Gt tubular scaffold (inner diameter = 3. mm) showed high porosity of 86.2 ± 2.9%, pore size of 2423 ± 979. nm and average fibre diameter of 166 ± 85. nm. Water uptake and contact angle of the scaffolds reached 112.0 ± 4.4% and 45.7 ± 13.7°, respectively. SDRAECs (Sprague Dawley Rat Aortic Endothelial Cells) grew and proliferated well and phenotype could be maintained on the composite scaffolds after they had been cultured on the composite scaffolds for 7 days. Compared with pure PCL scaffolds a greater density of viable cells was seen on the composites, especially the pNSR32/PCL/Gt scaffolds.
机译:通过使用pNSR32(重组蜘蛛丝蛋白),PCL(聚己内酯)和Gt(明胶)的静电纺丝聚合物溶液共混物来制造管状支架。研究了这些支架的理化性质和细胞相容性。之后,pNSR32 / PCL / Gt管状支架(内径= 3毫米)显示出86.2±2.9%的高孔隙率,2423±979. nm的孔径和166±85. nm的平均纤维直径。支架的吸水率和接触角分别达到112.0±4.4%和45.7±13.7°。 SDRAECs(Sprague Dawley大鼠主动脉内皮细胞)生长并增殖良好,在复合支架上培养7天后可以保持其表型。与纯PCL支架相比,复合材料,尤其是pNSR32 / PCL / Gt支架,具有更高的活细胞密度。

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